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In the past two decades, deeply virtual Compton scattering of electrons has been successfully used to advance our knowledge of the partonic structure of the free proton and investigate correlations between the transverse position and the longitudinal momentum of quarks inside the nucleon. Meanwhile, the structure of bound nucleons in nuclei has been studied in inclusive deep-inelastic lepton scattering experiments off nuclear targets, showing a significant difference in longitudinal momentum distribution of quarks inside the bound nucleon, known as the EMC effect. In this Letter, we report the first beam spin asymmetry (BSA) measurement of exclusive deeply virtual Compton scattering off a proton bound in ^{4}He. The data used here were accumulated using a 6 GeV longitudinally polarized electron beam incident on a pressurized ^{4}He gaseous target placed within the CLAS spectrometer in Hall-B at the Thomas Jefferson National Accelerator Facility. The azimuthal angle (Ï) dependence of the BSA was studied in a wide range of virtual photon and scattered proton kinematics. The Q^{2}, x_{B}, and t dependencies of the BSA on the bound proton are compared with those on the free proton. In the whole kinematical region of our measurements, the BSA on the bound proton is smaller by 20% to 40%, indicating possible medium modification of its partonic structure.
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A measurement of the electroproduction of photons off protons in the deeply inelastic regime was performed at Jefferson Lab using a nearly 6 GeV electron beam, a longitudinally polarized proton target, and the CEBAF Large Acceptance Spectrometer. Target-spin asymmetries for epâe^{'}p^{'}γ events, which arise from the interference of the deeply virtual Compton scattering and the Bethe-Heitler processes, were extracted over the widest kinematics in Q^{2}, x_{B}, t, and Ï, for 166 four-dimensional bins. In the framework of generalized parton distributions, at leading twist the t dependence of these asymmetries provides insight into the spatial distribution of the axial charge of the proton, which appears to be concentrated in its center. These results also bring important and necessary constraints for the existing parametrizations of chiral-even generalized parton distributions.
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Unpolarized and beam-polarized fourfold cross sections (d^{4}σ/dQ^{2}dx_{B}dtdÏ) for the epâe^{'}p^{'}γ reaction were measured using the CLAS detector and the 5.75-GeV polarized electron beam of the Jefferson Lab accelerator, for 110 (Q^{2},x_{B},t) bins over the widest phase space ever explored in the valence-quark region. Several models of generalized parton distributions (GPDs) describe the data well at most of our kinematics. This increases our confidence that we understand the GPD H, expected to be the dominant contributor to these observables. Through a leading-twist extraction of Compton form factors, these results support the model predictions of a larger nucleon size at lower quark-momentum fraction x_{B}.
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We measured the ratios of electroproduction cross sections from a proton target for three exclusive meson-baryon final states: ΛK(+), pπ(0), and nπ(+), with the CLAS detector at Jefferson Lab. Using a simple model of quark hadronization, we extract qq creation probabilities for the first time in exclusive two-body production, in which only a single qq pair is created. We observe a sizable suppression of strange quark-antiquark pairs compared to nonstrange pairs, similar to that seen in high-energy production.
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Exclusive π(0) electroproduction at a beam energy of 5.75 GeV has been measured with the Jefferson Lab CLAS spectrometer. Differential cross sections were measured at more than 1800 kinematic values in Q(2), x(B), t, and Ï(π), in the Q(2) range from 1.0 to 4.6 GeV(2), -t up to 2 GeV(2), and x(B) from 0.1 to 0.58. Structure functions σ(T)+ϵσ(L), σ(TT), and σ(LT) were extracted as functions of t for each of 17 combinations of Q(2) and x(B). The data were compared directly with two handbag-based calculations including both longitudinal and transversity generalized parton distributions (GPDs). Inclusion of only longitudinal GPDs very strongly underestimates σ(T)+ϵσ(L) and fails to account for σ(TT) and σ(LT), while inclusion of transversity GPDs brings the calculations into substantially better agreement with the data. There is very strong sensitivity to the relative contributions of nucleon helicity-flip and helicity nonflip processes. The results confirm that exclusive π(0) electroproduction offers direct experimental access to the transversity GPDs.
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Because of their long lifetimes, the ω and Ï mesons are the ideal candidates for the study of possible modifications of the in-medium meson-nucleon interaction through their absorption inside the nucleus. During the E01-112 experiment at the Thomas Jefferson National Accelerator Facility, the mesons were photoproduced from 2H, C, Ti, Fe, and Pb targets. This Letter reports the first measurement of the ratio of nuclear transparencies for the e+e- channel. The ratios indicate larger in-medium widths compared with what have been reported in other reaction channels. The absorption of the ω meson is stronger than that reported by the CBELSA-TAPS experiment and cannot be explained by recent theoretical models.
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OBJECTIVE: The purpose of this study was to evaluate the dose-dependent effect of human milk fortifier (HMF) on the osmolality of various preterm human milks (PHMs) at different gestational and lactation stages, and with different storage and treatment conditions that are routinely used in neonatal intensive care units (NICUs). STUDY DESIGN: Twenty-four mothers who had given birth to their baby before 28 or between 29 and 31 weeks of pregnancy participated in the study after 1-2 weeks or 3-4 weeks breastfeeding after delivery. The study was a prospective, multicenter, comparative, and noninterventional study. Osmolality of fresh or pasteurized human milk stored at 4°C was measured (cryoscopy) at baseline, and 24hours after adding Suppletine® Human Milk fortifier (SHMF) at 3%, 4%, 4.5%, and 5% (w/v). RESULTS: PHM without supplementation had an osmolality (mean±SD) of 301±8 mOsm/kgH2O (n=40; 95% CI: [298; 303]). Adding 3-5% SHMF induced a linear increase of osmolality (P<0.001; r2=0.975). With 4% SHMF, the osmolality measure was 443±13mOsm/kg H2O (95% CI: [439-447]). Neither a 24-hour storage at 4°C nor pasteurization induced a modification of osmolality compared to the fresh samples. CONCLUSION: Whatever the origin and quality of milk as well as hospital practices, adding up to 4% (w/v) SHMF to PHM increases its nutritional quality and osmolality without exceeding 450mOsm/kgH2O, which is generally recognized as safe.
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Alimentos Fortificados/análise , Leite Humano/química , Concentração Osmolar , Aleitamento Materno/métodos , Feminino , Idade Gestacional , Humanos , Recém-Nascido , Recém-Nascido Prematuro , Lactação/fisiologia , Valor Nutritivo , Padrões de Prática Médica , Estudos ProspectivosRESUMO
Tensor polarization observables ( t(20), t(21), and t(22)) have been measured in elastic electron-deuteron scattering for six values of momentum transfer between 0.66 and 1.7 (GeV/c)(2). The experiment was performed at the Jefferson Laboratory in Hall C using the electron High Momentum Spectrometer, a specially designed deuteron magnetic channel and the recoil deuteron polarimeter POLDER. The new data determine to much larger Q2 the deuteron charge form factors G(C) and G(Q). They are in good agreement with relativistic calculations and disagree with perturbative QCD predictions.
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OBJECTIVE: To measure satisfaction with modified protein eating patterns and the relationship of satisfaction to adherence and sociodemographic factors in a clinical trial. DESIGN: Participants completed the Dietary Satisfaction Questionnaire at baseline, at 6-month follow-up visits, at annual visits, and at the final visit. Satisfaction with diet was rated on a visual analog scale from 1 (dislike extremely) to 5 (like very much). Adherence to protein goals was assessed using urine urea nitrogen excretion from monthly 24-hour urine samples. SUBJECTS: 840 adults with chronic renal disease. INTERVENTION: Individual participants, randomly assigned to a usual-protein, low-protein, or very-low-protein group, received monthly counseling from a dietitian for an average of 26 months. STATISTICS: Analyses of variance and two-sample t tests compared, among study/diet groups, satisfaction with diet, its relationship to adherence and sociodemographic characteristics, and changes in satisfaction over time. Paired t tests compared changes within diet groups from baseline to final visit. RESULTS: From the baseline visit to the final visit, satisfaction with the prescribed eating pattern increased slightly in the usual-protein group, declined slightly in the low-protein group, and declined significantly in the very-low-protein group. Participants in all of the eating pattern groups who were more satisfied at the final visit had mean protein intakes closer to their assigned protein goals. This relationship was significant in the low-protein group (P < .05). In men, satisfaction with diet declined significantly from baseline to the final follow-up visit in the very-low-protein group. APPLICATIONS: The Modification of Diet in Renal Disease Study Dietary Satisfaction Questionnaire may be useful in other research and clinical settings to assess and enhance dietary adherence.
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Dieta com Restrição de Proteínas/normas , Comportamento Alimentar , Falência Renal Crônica/dietoterapia , Cooperação do Paciente , Satisfação do Paciente , Adulto , Análise de Variância , Feminino , Humanos , Falência Renal Crônica/epidemiologia , Falência Renal Crônica/psicologia , Masculino , Nitrogênio/urina , Inquéritos e Questionários , Ureia/urinaRESUMO
Hurler syndrome, the most severe form of mucopolysaccharidosis type I (MPS I), is a rare lysosomal storage disease. The overall incidence of MPS I is 0.99-1.99/100,000 live births. Accumulation of glycosaminoglycans causes the progressive dysfunction of multiple organs. We report the case of a 3-week-old newborn who was hospitalized in the Neonatal Intensive Care Unit for feeding problems. Coarse facial features and gingival hypertrophy, associated with axial hypotonia, upper airway obstruction, and moderate hepatomegaly, led to the early diagnosis of MPS I at 3 weeks of age and was confirmed by an abnormally elevated amount of dermatan and heparan sulphate in the urine and complete deficiency of alpha-L-iduronidase lysosomal enzyme activity. The child was homozygous for the p.W402X mutation, located on chromosome 4p16.3 of the alpha-L-iduronidase (IDUA) gene. The clinical condition gradually deteriorated until the age of 4 months, with thoracic and lumbar dysostoses, glaucoma, cerebral ventricular dilatation and cervical spinal stenosis, dilated cardiomyopathy, and umbilical hernia. Early diagnosis allowed enzyme replacement therapy (iaronidase, Aldurazyme(®), Genzyme) started at the age of 5 months, which provided stabilization of the heart disease, significant regression of rhinologic symptoms, and regression of hepatomegaly. Cord blood hematopoietic stem cell transplantation was performed at 11 months of age, allowing optimal preservation of cognitive development.
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Diagnóstico Precoce , Intervenção Médica Precoce , Mucopolissacaridose I/diagnóstico , Mucopolissacaridose I/terapia , Cromossomos Humanos Par 4/genética , Análise Mutacional de DNA , Progressão da Doença , Terapia de Reposição de Enzimas , Seguimentos , Homozigoto , Humanos , Iduronidase/genética , Iduronidase/uso terapêutico , Lactente , Recém-Nascido , Unidades de Terapia Intensiva Neonatal , Masculino , Mucopolissacaridose I/genéticaRESUMO
The atomic nucleus is composed of two different kinds of fermions: protons and neutrons. If the protons and neutrons did not interact, the Pauli exclusion principle would force the majority of fermions (usually neutrons) to have a higher average momentum. Our high-energy electron-scattering measurements using (12)C, (27)Al, (56)Fe, and (208)Pb targets show that even in heavy, neutron-rich nuclei, short-range interactions between the fermions form correlated high-momentum neutron-proton pairs. Thus, in neutron-rich nuclei, protons have a greater probability than neutrons to have momentum greater than the Fermi momentum. This finding has implications ranging from nuclear few-body systems to neutron stars and may also be observable experimentally in two-spin-state, ultracold atomic gas systems.
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We report a measurement of the differential cross section for the gamman-->pi- p process from the CLAS detector at Jefferson Laboratory in Hall B for photon energies between 1.0 and 3.5 GeV and pion center-of-mass (c.m.) angles (thetac.m.) between 50 degrees and 115 degrees. We confirm a previous indication of a broad enhancement around a c.m. energy ([sqrt]s) of 2.1 GeV at thetac.m.=90 degrees in the scaled differential cross section s7dsigma/dt and a rapid falloff in a center-of-mass energy region of about 400 MeV following the enhancement. Our data show an angular dependence of this enhancement as the suggested scaling region is approached for thetac.m. from 70 degrees to 105 degrees.
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The beam-spin asymmetries in the hard exclusive electroproduction of photons on the proton (e p-->epgamma) were measured over a wide kinematic range and with high statistical accuracy. These asymmetries result from the interference of the Bethe-Heitler process and of deeply virtual Compton scattering. Over the whole kinematic range (x(B) from 0.11 to 0.58, Q2 from 1 to 4.8 GeV2, -t from 0.09 to 1.8 GeV2), the azimuthal dependence of the asymmetries is compatible with expectations from leading-twist dominance, A approximately a sinphi/(1+c cosphi). This extensive set of data can thus be used to constrain significantly the generalized parton distributions of the nucleon in the valence quark sector.
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The present experiment exploits the interference between the deeply virtual Compton scattering (DVCS) and the Bethe-Heitler processes to extract the imaginary part of DVCS amplitudes on the neutron and on the deuteron from the helicity-dependent D(e,e'gamma)X cross section measured at Q2=1.9 GeV2 and xB=0.36. We extract a linear combination of generalized parton distributions (GPDs) particularly sensitive to E_{q}, the least constrained GPD. A model dependent constraint on the contribution of the up and down quarks to the nucleon spin is deduced.
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We present the first measurements of the e[over -->]p-->epgamma cross section in the deeply virtual Compton scattering (DVCS) regime and the valence quark region. The Q(2) dependence (from 1.5 to 2.3 GeV(2)) of the helicity-dependent cross section indicates the twist-2 dominance of DVCS, proving that generalized parton distributions (GPDs) are accessible to experiment at moderate Q(2). The helicity-independent cross section is also measured at Q(2)=2.3 GeV(2). We present the first model-independent measurement of linear combinations of GPDs and GPD integrals up to the twist-3 approximation.